Parallel non-cascaded wavelength selective switches reduce insertion loss by avoiding signal traversal through multiple sequential devices.
Software-defined network multi-layer controller adjusts optical and router configurations in near real-time.
Network Intelligent Routing Center selects destination sub call centers using real-time service capacity parameters and cyclic moving window algorithms.
Connection switching device eliminates cross connection units to reduce optical power budget while maintaining wavelength utilization efficiency.
Segmenting dual channels in an SFP-DD housing doubles bandwidth while maintaining backward compatibility with existing SFP ports.
Processing system detects unavailable EEPROMs, then applies sequential fiber and copper settings to restore link availability.
A wireless drop terminal connects fiber infrastructure to customer premises via directional links.
Pre-configured cross-connections enable nodes to switch signals locally without centralized control plane delays.
A silicon-photonics optical switch uses adiabatic directional couplers to route light signals between bus waveguides in different planes.
Dual FPGAs segment packet handling into independent receive and transmit pipelines to sustain high-speed data transfer rates.
OTUk data mapping system manages frame structure transitions to synchronize optical port signals, reducing clock loss and jitter in cascaded networks.
Shared secondary path protects multiple primary links using fewer fibers, lowering infrastructure costs while ensuring service reliability.
A wavelength selective switch integrates photodetectors to monitor multiple optical channels simultaneously via spatial separation.
Transmitter-side crosstalk pre-compensation using downlink reference signals in mode division multiplexed passive optical networks.
An optical network device captures physical layer data and outputs an encapsulated representation to a diagnostic tool.
Incremental voltage transitions minimize mirror overshoot and oscillation in optical circuit switches.
Segmenting the radio network controller into servers and wireless adapters reduces transmission delays while optimizing resource utilization.
Vertical buried contacts reduce device area and collector-substrate capacitance without adding manufacturing complexity or increasing costs.
Out-of-band signaling isolates discovery and ranging from the main upstream channel, eliminating quiet windows to reduce burst overhead and latency.
Selective bit inversion rewrites optical labels without altering payload data, eliminating costly OEO conversions.
An adaptation module converts electrical signals to support multiple data rates, reducing networking IC complexity.
A call management node intercepts disconnection signaling to connect a second party to a service node for status notification.
Passive optical network device uses training signals to determine channel response for communication signal compensation.
Grouping optical network units by received power allows the system to allocate specific uplink bandwidths, reducing quiet window size and registration delay.
Media converters with optical switching reconfigure network topologies, eliminating laborious manual cabling and overprovisioning inefficiencies.
An optical line terminal acts as a shared backup aggregation node to maintain network connectivity during primary device failures.
A local routing manager generates route plans from trunk group identifiers and service plans to automate call routing decisions.
Wavelength division multiplexing couplers separate alignment and operational light beams, eliminating active photodiodes to reduce manufacturing costs.
A network entity selects call-type-specific destination identifiers from a plurality of options to route calls using a single Subscriber Universal Destination Identifier.
A network management system integrates geographical coordinates with fiber link data to display a physical plant map for precise anomaly detection.
Three-stage optical switching matrices share wavelength conversion ports to reduce packet loss in large-scale networks.
A software module filters incoming and outgoing data packets based on IP address criteria to enforce IPv6-only network policies.
Extending Ethernet PONs with organization-specific TLVs resolves the trade-off between protocol simplicity and advanced OAM capabilities.
An external pass-through filter mounts to an existing RFoG micronode to combine optical signals from PON and legacy networks.
Optical network unit enables remote power supply by controlling switch states during handshake, eliminating local power sourcing needs.
A rotation beam and compensation block with different thermal expansion coefficients drive an optical element to adjust the wavelength position.
Wavelength selective switch routes arbitrary optical wavelengths through communication ports.
Controller segments multi-layer problems to reduce computational complexity while maintaining network resource isolation.
Autonomous vehicles align microwave antennas using feedback loops to maintain signal strength, resolving manual realignment complexity.
Automated fault isolation system analyzes network alarms to determine root causes, reducing downtime caused by manual processing bottlenecks.
Optical line terminal observes traffic parameters to calculate optimal sleep durations for network units.
A hybrid signal router compresses and aggregates multiple input signals into optical streams for efficient network transmission.
A network switch distributes unit data across multiple crossbar switches using a dedicated serial number setting unit to manage data flow.
Segmenting buffers into through and switching queues reduces memory capacity needs while preventing packet loss during adaptive connection switching.
Vertical stacking with through vias reduces wiring length and noise between optical elements and processors, improving signal quality.
Optical line terminals coordinate sleep modes with network units to reduce energy consumption.
OLT schedules active periods via bandwidth maps so ONUs power off receivers during inactive times, reducing energy waste.
An application identification function analyzes network traffic frames to determine software identity using heuristic processing and signature matching.
Asymmetric chip interconnect applies mixed differential and standard signaling to resolve reliability and speed contradictions across parallel channels.
An optical cross-connect device uses terahertz signals for all-optical switching.